Cooling Down Inflammation in the Cardiovascular System via the Nicotinic Acetylcholine Receptor

dc.contributor.authorKaplan, Abdullah
dc.contributor.authorLakkis, Bachir S.
dc.contributor.authorEl-Samadi, Lana
dc.contributor.authorKaraayvaz, E. B.
dc.contributor.authorBooz, George Warren
dc.contributor.authorZouein, Fouad A.
dc.contributor.departmentPharmacology and Toxicology
dc.contributor.facultyFaculty of Medicine (FM)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:40:05Z
dc.date.available2025-01-24T11:40:05Z
dc.date.issued2023
dc.description.abstractInflammation is a major player in many cardiovascular diseases including hypertension, atherosclerosis, myocardial infarction, and heart failure. In many individuals, these conditions coexist and mutually exacerbate each other's progression. The pathophysiology of these diseases entails the active involvement of both innate and adaptive immune cells. Immune cells that possess the α7 subunit of the nicotinic acetylcholine receptor on their surface have the potential to be targeted through both pharmacological and electrical stimulation of the cholinergic system. The cholinergic system regulates the inflammatory response to various stressors in different organ systems by systematically suppressing spleen-derived monocytes and chemokines and locally improving immune cell function. Research on the cardiovascular system has demonstrated the potential for atheroma plaque stabilization and regression as favorable outcomes. Smaller infarct size and reduced fibrosis have been associated with improved cardiac function and a decrease in adverse cardiac remodeling. Furthermore, enhanced electrical stability of the myocardium can lead to a reduction in the incidence of ventricular tachyarrhythmia. In addition, improving mitochondrial dysfunction and decreasing oxidative stress can result in less myocardial tissue damage caused by reperfusion injury. Restoring baroreflex activity and reduction in renal damage can promote blood pressure regulation and help counteract hypertension. Thus, the present review highlights the potential of nicotinic acetylcholine receptor activation as a natural approach to alleviate the adverse consequences of inflammation in the cardiovascular system. Copyright © 2023 Wolters Kluwer Health, Inc. All rights reserved.
dc.identifier.doihttps://doi.org/10.1097/FJC.0000000000001455
dc.identifier.eid2-s2.0-85173570220
dc.identifier.pmid37539950
dc.identifier.urihttp://hdl.handle.net/10938/29427
dc.language.isoen
dc.publisherLippincott Williams and Wilkins
dc.relation.ispartofJournal of Cardiovascular Pharmacology
dc.sourceScopus
dc.subjectArrhythmias
dc.subjectAtherosclerosis
dc.subjectCardiac remodeling
dc.subjectCholinergic anti-inflammatory pathway
dc.subjectHeart failure
dc.subjectHypertension
dc.subjectIschemia/reperfusion injury
dc.subjectParasympathetic nervous system
dc.subjectAlpha7 nicotinic acetylcholine receptor
dc.subjectCholinergic agents
dc.subjectHeart
dc.subjectHumans
dc.subjectInflammation
dc.subjectMyocardial infarction
dc.subjectReceptors, nicotinic
dc.subjectBungarotoxin receptor
dc.subjectChemokine
dc.subjectNicotinic receptor
dc.subjectCholinergic receptor stimulating agent
dc.subjectAdaptive immunity
dc.subjectAtheromatous plaque
dc.subjectBlood pressure regulation
dc.subjectCardiovascular inflammation
dc.subjectCholinergic system
dc.subjectDisorders of mitochondrial functions
dc.subjectElectrostimulation
dc.subjectHeart arrhythmia
dc.subjectHeart infarction
dc.subjectHeart infarction size
dc.subjectHeart muscle fibrosis
dc.subjectHeart muscle injury
dc.subjectHeart ventricle remodeling
dc.subjectHeart ventricle tachycardia
dc.subjectHuman
dc.subjectImmunocompetent cell
dc.subjectIncidence
dc.subjectInnate immunity
dc.subjectKidney injury
dc.subjectLeukocyte function
dc.subjectMonocyte
dc.subjectMyocardial ischemia reperfusion injury
dc.subjectNonhuman
dc.subjectOutcome assessment
dc.subjectOxidative stress
dc.subjectPressoreceptor reflex
dc.subjectReceptor upregulation
dc.subjectReview
dc.subjectSpleen
dc.subjectPhysiology
dc.titleCooling Down Inflammation in the Cardiovascular System via the Nicotinic Acetylcholine Receptor
dc.typeReview

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